Research of Control Virtual Instrument on Non-lethal Laser Weapon Transmitting and Attenuating in Rain and Fog
Received date: 2017-08-11
Revised date: 2018-01-10
Online published: 2018-05-31
Non-lethal laser weapon has broad application prospect in the feld of antiterrorism because of its excellent performance. But its performance is subject to atmospheric environment. The attenuation mechanism of laser transmission in rain and fog is studied in the paper. A virtual control system is designed and developed with LabVIEW for the real-time adjustment of light attenuation when non-lethal laser weapons work in rain or fog environment. Experiment results show that the designed system can realize real-time adjustment of laser power in the rain and fog environment with high precision. In addition, the designed system features with friendly interface, easy operation, low cost, expansibility and intelligentization.
LIU Xia, SHAN Ning, WANG Zhi-jing . Research of Control Virtual Instrument on Non-lethal Laser Weapon Transmitting and Attenuating in Rain and Fog[J]. Journal of Applied Sciences, 2018 , 36(3) : 535 -541 . DOI: 10.3969/j.issn.0255-8297.2018.03.013
[1] Wang J, Lu J, Chen L. Pulsed 980 nm short wavelength infrared neural stimulation in cochlea and laser parameter effects on auditory response characteristics[J]. Biomedical Engineering Online, 2015, 14(1):1-11.
[2] Hudson D E, Hudson D O, Wininger J M. Penetration of laser light at 808 nm and 980 nm in bovine tissue samples[J]. Photomedicine and Laser Surgery, 2013, 31:163-168.
[3] Wang J X, Lu J R, Tian L. Effect of fberoptic collimation technique on 808 nm wavelength laser stimulation of cochlear neurons[J]. Photomedicine and Laser Surgery, 2016, 34:1-6.
[4] Shan N, Liu X. Experiment study of bio-tissue's temperature irradiated by laser based on optical fber F-P sensor[C]//Proceedings of SPIE-7th International Symposium on Advanced Optical Manufacturing and Testing Technologies:Smart Structures and Materials for Manufacturing and Testing, 2014, 928501-928506.
[5] 刘小华,朱挺,蒋贤沛,王众北. 低能激光武器对人眼光热作用的数值模拟[J]. 激光与红外,2016, 46(9):1054-1059. Liu X H, Zhu T, Jiang X P, Wang Z B. Numerical simulation of thermal effect of low energy laser weapon on human eyes[J]. Laser & Infrared, 2016, 46(9):1054-1059. (in Chinese)
[6] 肖瑞,康宏向,梁洁,陈朋,刘明,钱焕文. 激光闪光致眩生物效应实验研究[J]. 激光与红外,2010, 40(11):1182-1185. Xiao R, Kang H X, Liang J, Chen P, Liu M, Qian H W. Experiment research on biological effects of laser flash blindness[J]. Laser & Infrared, 2010, 40(11):1182-1185. (in Chinese)
[7] 李丽芳. 大气气溶胶粒子散射对激光大气传输影响的研究[D]. 太原:中北大学,2013.
[8] 刘敏,雨雾共存天气下大气衰减计算的修正模型[J]. 中国激光,2011, 10(38):1-5. Liu M. A revision model of the calculation of atmospheric attenuation in water fogs weather[J]. Chinese Journal of Lasers, 2011, 10(38):1-5. (in Chinese)
[9] 郭婧. 近场定距脉冲激光在降雨中的大气传输特性研究[D]. 南京:南京理工大学,2012.
[10] 沈瑜,贾妍,刘文慧. 基于LabVIEW的比例溢流阀性能测试系统的设计[J]. 西安工程大学学报,2016, 30(6):808-812. Shen Y, Jia Y, Liu W H. The design of the performance characteristic test system for proportional relief valve based on LabVIEW[J]. Journal of Xi'an Polytechnic University, 2016, 30(6):808-812. (in Chinese)
[11] 秦绍辉,胥光申,沈丹峰,巨孔亮,陈振,赵刚. 基于LabVIEW的喷气织机综合性能测试系统[J]. 西安工程大学学报,2016, 30(1):107-111. Qin S H, Xu G S, Shen D F, Ju K L, Chen Z, Zhao G. Comprehensive performance test system of air-jet loom based on LabVIEW[J]. Journal of Xi'an Polytechnic University, 2016, 30(1):107-111. (in Chinese)
[12] 董祥见,陆洋. 基于LabVIEW的电控旋翼测控系统设计[J]. 南京航空航天大学学报,2017, 49(2):251-257. Dong X J, Lu Y. Design of measurement and control system for electrically controlled rotor based on LabVIEW[J]. Journal of Nanjing University of Aeronautics & Aeronautics, 2017, 49(2):251-257. (in Chinese)
[13] 张津瑞,肖渊,申松,刘金玲,吴姗. 气动式微滴喷射控制系统的设计与实现[J]. 西安工程大学学报,2017, 31(1):95-100. Zhang J R, Xiao Y, Shen S, Liu J L, Wu S. Design and implementation of control system for Pneumatic driven micro-droplet jetting generator[J]. Journal of Xi'an Polytechnic University, 2017, 31(1):95-100. (in Chinese)
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